181 resultados para Injections, Intraperitoneal


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Despite more than half a century of use in leishmaniasis, antimony therapy still presents serious problems concerning dosage and toxicity. Low and high doses have been shown to be equally effective. In this paper, the feasibility of injecting one ampoule of meglumine antimoniate intramuscularly every other day until clinical cure is demonstrated, while studying a series of 40 cutaneous leishmaniasis cases. Total dose used varied from 1,822.5 to 12,150mg of pentavalent antimony and total time of treatment varied from 3 to 10 weeks, with 86% efficacy. Thirty-six out of the 40 patients are still on follow-up with a mean time of 10.7 ± 7 months and a median of 9 months. No relapse or mucosal lesions have been noted so far. The schedule showed good tolerance and easy application and its efficacy was comparable to the officially recommended WHO schedule. Therefore, such a schedule represents a valuable alternative for the cases with high toxicicity to antimony or daily injections are an obstacle to the treatment.

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New therapeutic alternatives against leishmaniasis remain a priority. The activity of azithromycin against Leishmania (Leishmania) major has been previously demonstrated. Different responses among species of Leishmania make species-specific drug screening necessary. The activity of azithromycin against Leishmania (Viannia) braziliensis and Leishmania (Leishmania) amazonensis was evaluated in golden hamsters infected through footpad injections of metacyclic promastigotes, and compared with untreated controls and animals treated with meglumine antimoniate. Footpad thickness, lesion cultures and dissemination sites were analyzed. Treatment of golden hamsters with oral azithromycin at 450mg/kg had no activity against infections with Leishmania (Leishmania) amazonensis. For infections due to Leishmania (Viannia) braziliensis, azithromycin demonstrated significant activity relative to untreated controls, but inferior to meglumine antimoniate, for controlling lesion size. Neither drug was able to totally eliminate parasites from the lesions. It was concluded that azithromycin has activity against Leishmania (Viannia) braziliensis but not against Leishmania (Leishmania) amazonensis in this model.

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The introduction and popularization of laparoscopic cholecystectomy has been accompanied with a considerable increase in perforation of gallbladder during this procedure (10%--32%), with the occurrence of intraperitoneal bile spillage and the consequent increase in the incidence of lost gallstones (0.2%--20%). Recently the complications associated with these stones have been documented in the literature. We report a rare complication occurring in an 81-year-old woman who underwent laparoscopic cholecystectomy and developed cutaneous fistula to the umbilicus and elimination of biliary stones through the urinary tract. During the cholecystectomy, the gall bladder was perforated, and bile and gallstones were spilled into the peritoneal cavity. Two months after the initial procedure there was exteriorization of fistula through the umbilicus, with intermittent elimination of biliary stones. After eleven months, acute urinary retention occurred due to biliary stones in the bladder, which were removed by cystoscopy. We conclude that efforts should be concentrated on avoiding the spillage of stones during the surgery, and that no rules exist for indicating a laparotomy simply to retrieve these lost gallstones.

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OBJECTIVE: Macrolide antibiotics have anti-inflammatory properties in lung diseases. The aim of this study was to investigate the effect of clarithromycin in pulmonary cellular inflammatory response in mice. METHOD: Eight adult Swiss mice were studied. All animals received an intranasal challenge (80 µL) with dead Pseudomonas aeruginosa (1.0 x 10(12) CFU/mL). Bronchoalveolar lavage was performed 2 days later, with total cell count and differential cell analysis. The study group (n = 4) received clarithromycin treatment (50 mg/kg/day, intraperitoneal) for 5 days. Treatment was initiated 2 days before intranasal challenge. RESULTS: There was no significant difference in total cell count between the groups (mean: 2.0 x 10(6) and 1.3 x 10(6), respectively). In both groups, there was a predominance of neutrophils. However, the study group had a higher percentage of lymphocytes in the bronchoalveolar lavage than the control group (median of 19% vs 2.5%, P = .029). CONCLUSION: Clarithromycin alters the cytological pattern of bronchoalveolar lavage of Swiss mice with neutrophil pulmonary inflammation, significantly increasing the percentage of lymphocytes.

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FUNDAMENTO: A doença de Chagas, causada pelo protozoário Trypanosoma cruzi, é uma das mais importantes causas de insuficiência cardíaca na América Latina. A terapia celular vem sendo investigada como uma possível opção terapêutica para pacientes com doenças cardiovasculares. OBJETIVO: O objetivo deste estudo foi avaliar os efeitos da terapia com células-tronco mesenquimais em um modelo experimental de cardiomiopatia chagásica crônica. MÉTODOS: Camundongos C57BL/6 foram infectados com 1000 tripomastigotas da cepa Colombiana de T. cruzi e, após seis meses de infecção, foram tratados com células-tronco mesenquimais derivadas de tecido adiposo humano (CTTAs) ou com meio DMEM (controle). O grupo tratado recebeu duas injeções intraperitoneais de CTTAs (1x106 células / dose), com um mês de intervalo entre as duas doses. Antes e após 1 e 2 meses de tratamento, os animais chagásicos e controles normais foram submetidos à eletrocardiograma e teste ergoespirométrico. Todos os animais foram sacrificados sob anestesia após 2 meses de tratamento, para análise histopatológica do coração. RESULTADOS: Não foi observada melhora de arritmias e da função cardiovascular no grupo tratado com CTTAs, porém secções de corações de camundongos deste grupo apresentaram uma redução significativa do número de células inflamatórias (p < 0,0001) e da área de fibrose (p < 0,01) em comparação com animais chagásicos tratados com DMEM. CONCLUSÃO: Deste modo, conclui-se que a administração de CTTAs por via intraperitoneal é capaz de reduzir inflamação e fibrose no coração de camundongos cronicamente infectados por T. cruzi, porém não teve efeitos na função cardíaca dois meses após o transplante.

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The authors summarize the results of former works, based on the technics of parabiosis. After parabiotic union of two infantile rats, normal + castrate, the normal fellow enters into precocious puberty in about 7 days (Kallas). In the case of pairs: castrated male + normal female, the implants of testicles, or injection of maceration or aqueous extracts of testis in the castrated fellow, prevents the induction of early puberty in the normal female. In the case: castrated female + normal female, no inhibiting effect is provoked by that treatment. There is therefore a testicular hormone that regulates the hypophysis. After castration, this gland manifests a hyper-function and shows histological alterations, the chief character of these being the appearing in the anterior lobe, of the so-called castration cells, probably originated from basophile cells. Implants or injections of testis material prevent those alterations. This is a useful test; the effect is controlled by estimating the castration cells in the microscopic field. The testicular hormone that regulates the anterior lobe is probably another one, quite different from that which regulates the accessory genitalia. On account of the facts and experiments, it may be assumed that this new hormone is elaborated by the germinal epithelium of the testicles.

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In Brazil all the fishes belonging to the sub-family Curimatinae are called « saguirú ». The present work gives a biological study of the Curimatus elegans Steind., a small fish without any economical importance, which is to be found along the whole brazilian coast, down till Paraguay. The specimens utilized for the present study come from Fortaleza (Ceará, north-eastern Brazil). The C. elegans is « ilyophagus », that means, it feeds itself exclusively with those organic materials to be found in mud, specially with microscopical algae. The intestines are very extent, some of them measuring about 9 to 11 times body's length. Studies have been made about growth and age of the C. elegans; the biggest sizes found were of 153 mm. for females and 88 mm. for males. The C. elegans shows developed sexual glands during a long period (April to September). The movements of the spermatozoa, in contact with water is of 40 to 50 seconds of intense movements, ceasing after 70 to 100 seconds. In contact with 0.5% NaCl-solution spermatozoa show a big increase in movements-time, that can last till about 25 minutes. The eggs' diameter measures 0.70 to 0.73 mm., mature and hydrated it attains 0.93 to 1,00 mm. There is a certain correlation between the size of the body and the quantity of eggs. Big specimens can produce a total of 200.000 eggs. The average quantity contained in 1 gr. and 1 cc. is 6018 and 6229 eggs, respectively. Maturity and spawning in laboratory has been obtained due to injections of suspension of fish-hypophysis. Three or four hours after the injection, fishes show more movement and evident signs of excitation, proceeding spawning after 5 to 6 hours. Males, persecuting females, describe successive circles (merry-go-round) - carroussel), swimming side by side with females up to water's surface, where sexual products are start beating dry, for there is no blood yet. Circulation-scheme is to be found on fig. 4 and 5. The swim-bladder and the stomach are but delineated; the intestine is formed by a cylindric tube, all closed. At the place, where later on there will open the mouth, we find a group of ciliary hairs that produce a liquid current, very evident by the semi-circle formed by attached solid particles. After 36 hours, opening of the mouth and formation of the gill slits begin. At the age of 90 hours (4 mm.) the larvas swim well and start to feed themselves; the digestive tube is now all open and the swimbladder works already. During the first days of life, larvas have an adhesive organ situated at their frontal region (fig. 7) in form of a crescent, by means of which they hang to surrounding vegetation (fig. 6). When the larva begins to swim and to feed itself and its yolk are having been absorbed. the adhesive organ retracts and disappears. While larvas and alevins feed themselves with plancton, they have small eye-teeth, which disappear,. when fishes become « ilyophagus ». There exist too, during their life as larvas, pharyngeal-teeth. The lateral line appears in the larva after 16 to 18 days; more or less at the same time all fins are completely developed. Shortly after, first scales appear (20 to 23 days). Evolution of intestines twisting followed (fig. 9). Larvas show at different parts of their bodies small of organs excretory functions, that are constituted by bottons in serial disposition, every one with an excretory canal that opens towards the outside. These formations disappear suddenly when larvas attain their phase of alevin. The existence of a great number of said formations at the caudal fin (fig. 12) is of great interest. In our experiences of breeding we have employed several thousands of C. elegans larvas in different environs and we made conditions of surrounding change (illumination), depth of water, temperature, presence of sand at bottom of aquariums and without sand, food). In this way we could compare the results obtained, estimate the action of each factor for the realisation of a good bring-up of larvas.

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1. Gatos jovens inoculados por via intracerebral com doses relativamente grandes de virus neurotrópico ou viscerotrópico, e por via intraperitoneal com virus viscerotrópico, não demonstram virus circulante até o 12º dia. 2. Tais gatos também não demonstraram sintomas ligados à infecção amarílica. 3. Foi impossivel isolar virus do cérebro dos gatos que morreram no decurso das observações e os exames anatomopatológicos não demonstraram ter havido processo de encefalite (apenas um caso de encefalite tóxica). 4. O desenvolvimetno de imunidade serológica, após a inoculação de virus neurotrópico por via intracerebral e intraperitoneal, foi observado na grande maioria dos casos; com virus Asibi, obtivemos apenas dois resultados positivos quando o virus foi inoculado por via intracerebral. CONCLUSÃO: Gatos jovens são relativamente insensiveis ao virus amarílico, sendo possivel apenas evidenciar reação de imunidade.

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1. O virus neurotrópico Francês pode ser transferido em série de cérebro de pinto, sem modificações essenciais no comportamento do virus em camondongos e pintos. 2. Pintos são suscetiveis à inoculação de virus por via intracerebral, intraritoneal e intradérmica, evidenciando virus circulante e desenvolvimento de imunidade, em alta percentagem, para os inoculados nos primeiros dias de nascidos. A presença, porem, de virus no sangue varia na razão inversa da idade. Não parece ser possível infetar pintos por via gástrica. 3. O virus pode ser encontrado, ocasionalmente, no pulmão, fígado, baço e rim; alguns dias depois é apenas isolado do cérebro, onde pode ser evidenciado até o 10.° dia post-inoculação intraperitoneal e até o 15.° dia depois de inoculação intracerebral, e talvez em data posterior. Não conseguimos, porem, isolar virus das feses. 4. Não parece haver diferença na suscetibilidade ao virus amarílico, em pintos com avitaminose B. 5. Anticorpos são evidenciaveis no soro em media 10 a 11 dias após inoculação intraperitoneal e intracerebral, sendo possível isolar ao mesmo tempo, virus do cérebro. 6. A idade tem influencia nítida no desenvolvimento da imunidade, em pintos inoculados por via intraperitoneal. 7. A multiplicação e circulação de virus após inoculação intradérmica de 50 a 160 D. M. M., torna possível a hipótese de mosquitos infectados difundirem o virus entre pintos e talvez a outras aves, com poucos dias de idade.

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1) O A. revê as vias de infecção naturais e os processos de inoculações empregados em ratos, no estudo da lepra murina. 2) Na natureza, o contacto prolongado de animal sadio com doente e a infecção por via gástrica devem ser os modos comuns de contaminação. 3) Foram encontrados dentro do Polyplax spinulosa (Burmeister) capturados em ratos leprosos, bacilos ácido álcool resistentes. Tentativas de cultura com êste material, foram infrutíferas. 4) O A. infectou ratos colocando no estômago, por meio de sondas de vidro, material leproso. Em cinco animais, todos se infectaram. 5) Por via subcutânea e por via intraperitoneal, a infecção se processa em quase 100% dos casos. 6) Foi possível infectar gambás (Didelphis aurita) com lepra murina. Êsses animais provavelmente são mais suscetíveis à lepra dos ratos que à humana. 7) Conseguiu-se infectar pinto por inoculação de emulsão de lepra murina no músculo do peito, por via intraperitoneal e por via gástrica. 8) Pombos também se infectaram após inoculação no músculo do peito e por via venosa.

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The A. prepared five antigens from his leprosy cultures which by analogy with ROST's product he called Leprolins. The methods of its preparation and use are given. After a few tests to prove its innocuity for man the A. in cooperation with Dr. JOSÉ MARIANO, injected all five antigens intracutaneously in 120 patients. Now the products are being tested in 17 Leper Colonies of Brazil, in Argentina by Dr. SALOMON SCHUJMAN and in two leprosaria of Colombia. As antigen for skin tests the first results obtained are more or less identical with the results with Lepromin. Its use in serology for leprosy diagnosis will be made by Dr. T. PINTO of Rio, and Prof. LUIZ PRADO BARRIENTOS, of La Paz, Bolivia. As curative means the Leprolins are being injected into resistent lesions of leprosy and also by intraven injections, whose results Dr. José Mariano will publish soon. The Leprolins Souza-Araujo are put at disposal of all leprologists interested in its use.

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1) — Duas amostras de vírus capazes de produzir uma mielencefalite foram isoladas de dois camundongos brancos suíços, de criação, espontâneamente infetados, em um total de 7.000 animais examinados; uma terceira amostra foi obtida por trituração e filtração dos intestinos de camundongos aparentemente normais. 2) — Foram feitas separadamente dez passagens por inoculação intra¬cerebral em camundongos jovens e adultos. Verificou-se por testes de imunidade cruzada que as três amostras eram idênticas. Prossegiu-se então nas passagens com apenas uma das amostras. 3) — O poder infetante aumenta com o número de passagens: o período médio de incubação diminui e aumenta a letalidade. 4) — A infecção espontânea e experimental é descrita. A doença parece ser mais comum em animais jovens. O período de incubação varia de 5 a 30 dias. Às vêzes observa-se uma fase prodromica: fraqueza, menor atividade, dificuldade em andar; geralmente surge a paralisia flácida sem sintomas prévios, na grande maioria das vêzes, nos membros posteriores. Três formas clínicas foram observadas: super-aguda, aguda e crônica. 5) — Em camundongos normais o vírus pode ser demonstrado nas fezes e nos intestinos. Ele é comum no tubo digestivo e só ocasionalmente invade o sistema nervoso central, ou melhor, a encefalomielite e primàriamente uma doença do trato digestivo no qual a invasão do SNC é um acidente. 6) — O vírus passa através de velas de CHAMBERLAND L3 e L5, em BER KEFED V, N e W e em filtro Seitz EK, a suspensão sendo tão ativa como antes da filtração. Conserva-se bem em glicerina a 50% pelo menos 60 dias, se guardado na geladeira. Suspensão de cérebro e medula aquecida em banho-maria a 56°C por 30 minutos perde a atividade. 7) — O título variou entre 4.000 e 20.000 dmm. 8) — Obteve-se infecção por inoculação intracerebral, por instilação nasal e, com menos regularidade, por inoculação intraperitoneal; a via gástrica deu sempre resultados negativos. Camundongos muito jovens são mais suscetíveis do que os adultos. 9) — O vírus foi sempre isolado ate 90 dias pos-inoculação, do cérebro e da medula de camundongos com paralisia. Animais inoculados por via i.c., que permaneceram aparentemente normais, albergam o vírus no cérebro pelo menos durante 30 dias. 10) — Não foi possível isolar vírus do fígado, pulmão, bago, rim e sangue de camundongos infetados por via intracerebral. 11) — Camundongos que foram inoculados por via i.c. e não apresentaram sintomas de infecção, mostraram-se em geral imunes a uma posterior inoculação de vírus. Os soros de animais convalescentes apresentam anticorpos neutralizantes verificados por provas de proteção. 12) — A inoculação intracerebral do vírus em macaco, coelho, cobaia e rato, todos jovens, não produziu infecção. 13) — As lesões encontradas foram de poliomielencefalite aguda, com atrofia do corno anterior da medula. Ao nível da substancia cinzenta medular e cerebral encontram-se abundantes focos inflamatórios, com predominância de mononucleares, bem como em torno de numerosos vasos. Em certos pontos do cérebro, sobretudo no rinencéfalo, foram vistos focos extensos de encefalite hemorrágica. É evidente que em torno do foco e participando das infiltrações celulares, muitos elementos microgliais puderam ser reconhecidos. As meninges, especialmente a pia-máter, mostraram-se levemente alteradas e assim mesmo em focos esparsos.

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This report belongs to the series of works carried out Oswaldo Cruz Ins¬titute, on the treatment of treponematosis with penicillin. The present report deals with investigations performed in order to ascer¬tain the following points: 1) the mininal curative dosis for the initial lesions of yaws; 2) the effect of reduction of the number of injections each day, to verifie the possibility of application of penicillin in the prophylaxis of yaws in rural zones; 3) reduction of the time of treatment by application of high dosis. 1) With dosis of 150 and 100 Oxford units each four hours, clinical reco¬very was obtained after 17 days of treatment. With 50 O.u. during 40 days clinical recovery was not obtained. 2) a) With 3 injections of 400 O.u. each day (6,12 and 18 hoórs clocks) clinical recovery was obtained after 14 to 16 days; b) with 2 injections of 400 O.u. each day (6 and 18 hoors clocks), clinical recovery was obtained after 16 to 23 days; c) with 1 injection of 1.600 and 3.200 each day, clinical recovery was obtained after 30 and 20 days. 3) With dosis of 33.3 and 46.7 O.u. by each kilo of weight each four hours, during 15 days, clinical recovery was obtained more or less in 25 days. The same result was obtained with the dosis of 61.5 and 166.7 O.u. by each kilo of weight, each four hours, during 4 days. But with 100.000 O.u. in fine dosis of 20.000 in a day ou by, clinical recovery was not obtained.

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After going through the more important theories on cellular permeability, researches were undertaken with the purpose of proving the actual influence of the various degrees of cellular permeability on the phenomena of organic resistance against infections, and on the production of antibodies. Three groups of substances known to have action on cellular permeability were used; the first consisting of the following permeable substances: testos-terona, acetylcholine, and the spreading-factor of the staphyloccocus. The second group included substances which help in developing low cellular permeability: atropin, adrenalin and calcium. Finally, the third group consisted of a substance which helps to maintain normal permeability: cortin (an extract of the suprarenal cortex). In order to study the process developed by these elements with regard to organic resistance against infections, adult mice were inoculated with the following germs: K. pneumoniae, P. aeruginosa, S. enteriditis and D. pneumoniae, in the smallest possible amount capable of starting a mortal sep infection in approximately 24 hours, exception made of D. pneumonias which causes death in 48 hours. The animals were divided into groups of 10, a before taking the injections containing the germs, they were given the sub lances under observation, through their peritoneum of intramuscularly. T. animals that died were autopsied and blood was taken from their hearts an aseptic process so as not to introduce extraneous organisms. For the purpose of determining the development of antibodies (hem lysins, precipitins and aglutinins), rabbits were used, which had been prep ously immunized by a treatment consisting of 6 intravenous injections of polyvolent antigen made of sheep blood cells, fresh human serum, and of suspension of S. enteriditis. It was concluded that: Cellular permeability plays a very important part in the development infections. Permeable substances help the development of germ infections. Substances helping to develop low permeability proved not to have any influence worth mentioning. Substances helping to maintain normal permeability, such as coffin, it crease resistance against infections. The different substances used which have action on cellular permeability had no influence worth mentioning on the development of certain ant bodies (hemolysins, precipitins and aglutinins). It was admitted that the phenomena under study relative to resistance against infections are closely connected to the dynamics of the cellular elements, which circumstance is basically dependent on the permeability of Citations of cells.

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Arrangement of potassium in the tissues having been mentioned, as well as the rôle it plays in some pathological processes such as suprarenal insufficiency, anaphylactic shock and shock caused by hemorrhage or traumatism, experiences were undertaken to establish the rates of plasma potassium during bacteria infections artificially developed in rabbits by K. pneumoniae. P. aeruginosa and S. enteridits. It was concluded that during the period of the infections, the rate of potassium of the plasma increases almost immediately after the inoculation and stays high when the infections are of a serious or mortal character; the rate continue to increase until the death of the animal occurs. When these infections are not very serious, as in the cases of infections resulting from inoculations of bacteria as not recent — and consequently with attenuated virulence — K pneumoniae, or P aeruginosa and S enteriditis, to which rabbits are naturally very resistant, the rate of potassium of the plasma increases after an intravenous inoculation of germs according to the septicemic period of the infection; however, when, because of its natural resistance, the animal overcomes the infection, the amount of potassium gradually decreases and finally gets back to the normal rate. The action of cortin on potassium of the plasma was also tested on animals suffering from acute infections caused by K. pneumoniae, which, under normal conditions cause death of the rabbits, nor did it increase the rate of potassium of the plasma when a larger amount of bacteria (300,000,000) was inoculated. However, cortin inoculated several times prevented a higher rate of potassium in the plasma during the development of the infection when a smaller number of bacteria (150,000,000) was inoculated, which quantity, under normal conditions, always causes mortal infections. When cortin is discontinued 20 hours after the inoculation of germs, the infection increases fastly and the animal dies in a very short time. Now, if the injections of cortin continue to be given every hour until the 26th hour instead of only until the 20th hour, the amount of potassium in the plasma — very high if the hormones substance is no longer inoculated — gradually becomes smaller and finally comes back to the normal rate if the inoculations continue to be made; it will increase again only if the substance is no longer injected; after a few hours the injection is gone, potassium is found to come back to its former rate, and in consequence the animal is perfectly cured of an infection otherwise mortal. ln view of the results thus obtained, it was concluded that, during the development of those infections, the checking of the rate of potassium of the plasma provided a means of controlling the resistance of a body suffering from an infection, that rate increasing when the infection is developing and becoming more severe, or getting back to normal when the infection decreases. The checking of the rate of potassium of the plasma also made known the action of cortin on the tissues, which is found to control the permeability of the cells to potassium. Suggestions were made that potassium of the plasma be thereofre checked during infections in the human body, to make possible proving that the phenomena studied in those animals also take place in the human body. In case this is found to be true, we sould possess an important element to check organic vitality during infections.